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HIV-1多聚腺苷酸化信号的结构分化

Structural differentiation of the HIV-1 polyA signals.

作者信息

Gee Alan H, Kasprzak Wojciech, Shapiro Bruce A

机构信息

Center for Cancer Research, Nanobiology Program, National Cancer Institute, Building 469, Room 150, NCI-Frederick, Frederick, MD 21702, USA.

出版信息

J Biomol Struct Dyn. 2006 Feb;23(4):417-28. doi: 10.1080/07391102.2006.10531236.

Abstract

The Human Immunodeficiency Virus Type 1 (HIV-1) encodes the polyadenylation (polyA) signal (AAUAAA) within the highly conserved untranslated region (UTR) at both 5' and 3' terminals of the viral transcript. In polyadenylation, an RNA transcript is cleaved and then elongated with adenine nucleotides while repression of the 5' signal and utilization of the 3' signal occurs. Because experimental studies have yet to analyze the structures of both 5' and 3' signals from a global perspective, other structural conformations involving these signals may exist and could be pivotal to understanding key functional processes. To distinguish the differential regulation of the 5' and 3' polyA signals, we studied the structural tendencies of both the 5' and 3' UTR in HIV-1. Through computational folding predictions of multiple HIV-1 strains using the Massively Parallel Genetic Algorithm (MPGAfold) capable of dynamically elucidating key alternative conformations, the 5' polyA signal was found to be dominantly occluded in a hairpin loop while the 3' polyA signal showed variability between hairpin and linear conformations with a propensity for the linear structure with an asymmetric internal loop. Furthermore, the energies and predictions of these structures indicate that the polyA signals have some metastable characteristics indicating an ability to switch into different conformations that can regulate viral function.

摘要

1型人类免疫缺陷病毒(HIV-1)在病毒转录本5'和3'末端高度保守的非翻译区(UTR)内编码聚腺苷酸化(polyA)信号(AAUAAA)。在聚腺苷酸化过程中,RNA转录本被切割,然后用腺嘌呤核苷酸进行延伸,同时5'信号受到抑制,3'信号开始发挥作用。由于实验研究尚未从全局角度分析5'和3'信号的结构,可能存在涉及这些信号的其他结构构象,而这些构象可能对理解关键功能过程至关重要。为了区分5'和3' polyA信号的差异调节,我们研究了HIV-1中5'和3' UTR的结构倾向。通过使用能够动态阐明关键替代构象的大规模并行遗传算法(MPGAfold)对多个HIV-1毒株进行计算折叠预测,发现5' polyA信号主要被封闭在发夹环中,而3' polyA信号在发夹构象和线性构象之间表现出变异性,倾向于具有不对称内环的线性结构。此外,这些结构的能量和预测表明,polyA信号具有一些亚稳态特征,表明其能够切换到不同构象以调节病毒功能。

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